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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Establishment of fault current characteristics for solar photovoltaic generator considering low voltage ride through and reactive current injection requirement
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Establishment of fault current characteristics for solar photovoltaic generator considering low voltage ride through and reactive current injection requirement

机译:考虑低压穿越和无功注入要求的太阳能光伏发电机故障电流特性的建立

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摘要

Fault current studies are often required to determine the proper settings for the overcurrent relays. The conventional synchronous generators are known to exhibit high current magnitude during fault, which present an ideal scenario for fault isolation using the cost-effective overcurrent relays. On the other hand, the fault current magnitude from renewable based generation such as solar photovoltaic (PV) is intentionally limited due to the constraints in the power electronic components. Therefore, dispute pertaining to the feasibility of overcurrent relay in inverter based distributed generations (IBDG) applications arises. These disputes mainly arise due to the unavailability of firm understanding of the fault current characteristics from the IBDGs. The problem is further compounded with the availability of numerous possible fault current controls, where various fault current characteristics can be obtained from the IBDGs. In light of this problem, this paper aims to establish the various possible IBDG fault current characteristics, with special attention paid to compliance to the latest grid codes requirements such as low voltage ride through (LVRT) with reactive current injection (RCI). Five different types of RCI controls are analyzed as follows: variable active current control, constant active power control, constant reactive power control, constant active current control, and maximum current control. From the established fault current characteristics in this paper, the disputes pertaining to the feasibility of overcurrent relay for IBDG applications can be resolved and the suitable types of RCI control that allow satisfactory performance of overcurrent relays can be identified.
机译:通常需要进行故障电流研究以确定过电流继电器的正确设置。已知传统的同步发电机在故障期间表现出高电流强度,这是使用经济高效的过电流继电器进行故障隔离的理想方案。另一方面,由于电力电子部件中的限制,有意地限制了基于可再生能源的发电(例如太阳能光伏(PV))的故障电流幅度。因此,出现了与基于逆变器的分布式发电(IBDG)应用中的过电流继电器的可行性有关的争议。这些争端主要是由于无法从IBDG深入了解故障电流特性而引起的。众多可能的故障电流控制措施使问题进一步复杂化,可从IBDG获得各种故障电流特性。针对这个问题,本文旨在建立各种可能的IBDG故障电流特性,并特别注意遵守最新的电网法规要求,例如带有无功电流注入(RCI)的低压穿越(LVRT)。分析了五种不同类型的RCI控制:可变有功电流控制,恒定有功功率控制,恒定无功功率控制,恒定有功电流控制和最大电流控制。根据已建立的故障电流特性,可以解决与IBDG应用中的过电流继电器的可行性有关的争议,并可以确定允许过电流继电器性能令人满意的RCI控制的合适类型。

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